Abstract <p>We report on the effective degradation of dexamethasone (DEX) using systems that generate <b>·</b>OH&#xa0;radicals based on advanced oxidation processes, specifically UV/H<sub>2</sub>O<sub>2</sub> and photo-Fenton systems. The effects of such parameters as pH (3–11), H<sub>2</sub>O<sub>2</sub> concentration (0.85–68 mg/L) and initial DEX concentration (20–80 mg/L) on degradation were investigated at the temperature range 5–30°C. The efficiency of degradation degree in UV/H<sub>2</sub>O<sub>2</sub> system was found to be 90.92% under the optimal conditions: pH 7, after 8 min, DEX concentration of 40 mg/L, H<sub>2</sub>O<sub>2</sub> concentration of 0.85 mg/L, UV radiation of 1000 W and at the temperature of 25°C. Usage of hydrogen peroxide as an oxidant becomes an additional source of <b>·</b>OH radicals and reinforces oxidation of the considered drugs. Advanced oxidation technologies, including UV/H<sub>2</sub>O<sub>2</sub>, sa-tisfy a pseudo second-order reaction kinetics model, the values of the constant are between 0.386 and 1.249&#xa0;L/(mg min). The degradation process of DEX in the photo-Fenton system was studied at different Fe<sup>2+</sup>/H<sub>2</sub>O<sub>2</sub> ratios, between 1 : 10 and 1 : 80, the optimal ratio was found to be 1 : 50 under the following conditions: H<sub>2</sub>O<sub>2</sub> concentration of 2.5 × 10<sup>–3</sup> mg/L, DEX concentration of 40 mg/L, at pH 4, Fe<sup>2+</sup> concentration of 0.5 × 10<sup>–4</sup> mg/L, at a temperature of 25°C. The addition of Fe<sup>2+</sup> ions as a catalyst allowed to increase the degradation degree of DEX in the photo-Fenton system up to 99.87%.</p>

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Photo-Degradation of Dexamethasone through Radical-Based Advanced Oxidation Processes Using UV/H2O2 and Fe2+/UV/H2O2 Systems

  • T. Isac-Gutul,
  • E. Tutovan,
  • D. L. Nika

摘要

Abstract

We report on the effective degradation of dexamethasone (DEX) using systems that generate ·OH radicals based on advanced oxidation processes, specifically UV/H2O2 and photo-Fenton systems. The effects of such parameters as pH (3–11), H2O2 concentration (0.85–68 mg/L) and initial DEX concentration (20–80 mg/L) on degradation were investigated at the temperature range 5–30°C. The efficiency of degradation degree in UV/H2O2 system was found to be 90.92% under the optimal conditions: pH 7, after 8 min, DEX concentration of 40 mg/L, H2O2 concentration of 0.85 mg/L, UV radiation of 1000 W and at the temperature of 25°C. Usage of hydrogen peroxide as an oxidant becomes an additional source of ·OH radicals and reinforces oxidation of the considered drugs. Advanced oxidation technologies, including UV/H2O2, sa-tisfy a pseudo second-order reaction kinetics model, the values of the constant are between 0.386 and 1.249 L/(mg min). The degradation process of DEX in the photo-Fenton system was studied at different Fe2+/H2O2 ratios, between 1 : 10 and 1 : 80, the optimal ratio was found to be 1 : 50 under the following conditions: H2O2 concentration of 2.5 × 10–3 mg/L, DEX concentration of 40 mg/L, at pH 4, Fe2+ concentration of 0.5 × 10–4 mg/L, at a temperature of 25°C. The addition of Fe2+ ions as a catalyst allowed to increase the degradation degree of DEX in the photo-Fenton system up to 99.87%.